Start new LLVM generator using IRBuilder
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README.md
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README.md
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# Really Bad Compiler in Haskell
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# Really Bad Compiler in Haskell
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A compiler written in Haskell which can currently perform basic arithmetic. Currently using the megaparsec and llvm-hs libraries, but I plan to reimplement parsing and llvm generation myself. Built for the Introduction to Compiler Design class at The University of Texas at Dallas.
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A compiler written in Haskell which can currently perform basic arithmetic. Currently using the megaparsec and llvm-hs-\* libraries, but I plan to reimplement parsing and llvm generation myself. Built for the Introduction to Compiler Design class at The University of Texas at Dallas.
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Main repo: https://git.sudoer.ch/me/really-bad-compiler-in-haskell
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Main repo: https://git.sudoer.ch/me/really-bad-compiler-in-haskell
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@ -27,19 +27,22 @@ Main repo: https://git.sudoer.ch/me/really-bad-compiler-in-haskell
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### Learning Resources Used
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### Learning Resources Used
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- Introduction to Compiler Design class at The University of Texas at Dallas, taught by Charles Averill
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- Introduction to Compiler Design class at The University of Texas at Dallas, taught by Charles Averill
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- learnyouahaskell.com (for learning Haskell basics)
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- https://learnyouahaskell.com (for learning Haskell basics)
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- https://akashagrawal.me/2017/01/19/beginners-guide-to-megaparsec.html
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- https://akashagrawal.me/2017/01/19/beginners-guide-to-megaparsec.html
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- https://markkarpov.com/tutorial/megaparsec.html (for help writing a Haskell equation parser)
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- https://markkarpov.com/tutorial/megaparsec.html (for help writing a Haskell equation parser using megaparsec)
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- https://www.forth.com/starting-forth/1-forth-stacks-dictionary/ (for learning Forth)
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- https://www.forth.com/starting-forth/1-forth-stacks-dictionary/ (for learning Forth)
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- https://blog.josephmorag.com/posts/mcc0/ (Haskell compiler tutorial with megaparsec, llvm-hs, and nix)
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- https://blog.josephmorag.com/posts/mcc0/ (Haskell compiler tutorial with megaparsec, llvm-hs, and nix)
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- https://gh.sudoer.ch/llvm-hs/llvm-hs-examples (for help writing an llvm code generator)
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- https://gh.sudoer.ch/llvm-hs/llvm-hs-examples (for help writing an llvm code generator using llvm-hs)
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- https://danieljharvey.github.io/posts/2023-02-08-llvm-compiler-part-1.html (for help using llvm-hs-pure)
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- https://gh.sudoer.ch/danieljharvey/mimsa/blob/trunk/llvm-calc/src/Calc/Compile/ToLLVM.hs (source code for above resource)
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- https://9to5tutorial.com/homebrew-compiler-made-with-haskell-llvm-configuration (for help using llvm-hs-pure)
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### Tools
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### Tools
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- Language: Haskell
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- Language: Haskell
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- Haskell tools: GHCup, Stack, Cabal
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- Haskell tools: GHCup, Stack, Cabal, GHC 9.2
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- Libraries: megaparsec, parser-combinators, text, llvm-hs-pure
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- Libraries: megaparsec, parser-combinators, text, llvm-hs-pure 15, llvm-hs-pretty-15
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- Dependencies: llvm, clang
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- Dependencies: llvm 15, clang 15
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- IDE: VSCodium
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- IDE: VSCodium
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- Git platform: Forgejo
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- Git platform: Forgejo
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- AI: Phind (GPT-4), ollama (codellama)
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- AI: Phind (GPT-4), ollama (codellama)
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module Eval.Expression (evalExpr) where
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module Eval.Expr (evalExpr) where
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import Objects.Expression
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import Types.Expr
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eval :: Expr -> Int
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eval :: Expr -> Int
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eval (Lit x) = x
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eval (Lit x) = x
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{-# LANGUAGE ImportQualifiedPost #-}
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{-# LANGUAGE OverloadedStrings #-}
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-- see https://gh.sudoer.ch/danieljharvey/mimsa/blob/trunk/llvm-calc/src/Calc/Compile/ToLLVM.hs
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module LLVMGen.Expr (getLLVMStr) where
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import Data.Text.Lazy
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import LLVM.AST hiding (function)
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import LLVM.AST.Type
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import LLVM.IRBuilder.Constant
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import LLVM.IRBuilder.Instruction
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import LLVM.IRBuilder.Module
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import LLVM.IRBuilder.Monad
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import LLVM.Pretty
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import Types.Expr as Expr
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-- charStar :: LLVM.Type
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-- charStar = LLVM.ptr LLVM.i8
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getLLVM :: Expr -> Module
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getLLVM expr =
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buildModule "program" $ do
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-- TODO: better naming
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printf <- externVarArgs "printf" [ptr] i32 -- or LLVM.ptr LLVM.i8
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let numFormatStr = globalStringPtr "%d\n" (mkName "str")
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function "main" [] i32 $ \_ -> do
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ourExpression <- exprToLLVM expr
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nfs <- numFormatStr
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_ <- call i32 printf [(ConstantOperand nfs, []), (ourExpression, [])]
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ret (int32 0)
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exprToLLVM ::
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( MonadIRBuilder m,
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MonadModuleBuilder m
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) =>
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Expr ->
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m Operand
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exprToLLVM (Lit prim) = pure $ primToLLVM prim
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exprToLLVM (Expr.Add a b) = do
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lhs <- exprToLLVM a
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rhs <- exprToLLVM b
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add lhs rhs
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exprToLLVM (Expr.Sub a b) = do
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lhs <- exprToLLVM a
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rhs <- exprToLLVM b
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sub lhs rhs
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exprToLLVM (Expr.Mul a b) = do
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lhs <- exprToLLVM a
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rhs <- exprToLLVM b
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mul lhs rhs
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primToLLVM :: Int -> Operand
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primToLLVM i = int32 (fromIntegral i)
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getLLVMStr :: Expr -> Text
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getLLVMStr expr = ppllvm (getLLVM expr)
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module LLVMGen.Expression (getLLVM) where
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module LLVMGen.Expr (getLLVM) where
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import qualified Objects.Expression as Expr
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import qualified Objects.Expr as Expr
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import LLVM.AST
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import LLVM.AST
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import qualified LLVM.AST as AST
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import qualified LLVM.AST as AST
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where
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where
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body = BasicBlock
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body = BasicBlock
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(Name "entry")
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(Name "entry")
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[]
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[ Name "calltmp" :=
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Call
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{ tailCallKind = Nothing
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, function = Right (ConstantOperand (GlobalReference (PointerType (FunctionType int [int, int] False) defaultAddrSpace) (Name "add")))
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, arguments = [ (ConstantOperand (Int 32 10), []), (ConstantOperand (Int 32 20), []) ]
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}
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]
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(Do $ Ret (Just (ConstantOperand (Int 32 0))) [])
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(Do $ Ret (Just (ConstantOperand (Int 32 0))) [])
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defAdd :: Definition
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defAdd :: Definition
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[]]
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[]]
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(Do $ Ret (Just (LocalReference int (Name "result"))) [])
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(Do $ Ret (Just (LocalReference int (Name "result"))) [])
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module_ :: AST.Module
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module_ :: AST.Module
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module_ = defaultModule
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module_ = defaultModule
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{ moduleName = "basic"
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{ moduleName = "basic"
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main/Main.hs
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main/Main.hs
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{-# LANGUAGE ImportQualifiedPost #-}
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{-# LANGUAGE OverloadedStrings #-}
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module Main (main) where
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module Main (main) where
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import Control.Monad
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import Data.Text.Lazy.IO qualified as T
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import Data.Either
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import Eval.Expr
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import Eval.Expression
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import LLVMGen.Expr
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import Objects.Expression
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import Parser.Expr
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import Parser.Expression
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import System.Environment
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import System.Environment
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import LLVMGen.Expression
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import Types.Expr
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import System.IO
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import Text.Megaparsec
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getRight :: ParseResult -> Expr
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getRight :: ParseResult -> Expr
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getRight (Right r) = r
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getRight (Right r) = r
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getResult :: String -> Int
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getResult :: String -> Int
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getResult str = evalExpr (getRight (parseExpr str))
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getResult str = evalExpr (getRight (parseExpr str)) -- TODO: add error messages
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main :: IO ()
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main = do
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main = do
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fileName <- fmap head getArgs
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fileName <- fmap head getArgs
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contents <- readFile fileName
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contents <- readFile fileName
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let result = getResult contents
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let result = getResult contents
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print result
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print result
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getLLVM
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T.putStrLn (getLLVMStr (getRight (parseExpr contents)))
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module Objects.Expression
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( Expr
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( Lit,
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Add,
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Sub,
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Mul,
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Div
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),
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-- solve,
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)
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where
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data Expr
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= Lit Int
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| Add Expr Expr
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| Sub Expr Expr
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| Mul Expr Expr
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| Div Expr Expr
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deriving (Show)
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module Parser.Expression (parseExpr, ParseResult) where
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-- see https://markkarpov.com/tutorial/megaparsec.html
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{-# LANGUAGE ImportQualifiedPost #-}
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module Parser.Expr (parseExpr, ParseResult) where
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import Control.Monad.Combinators.Expr
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import Control.Monad.Combinators.Expr
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import Data.Functor.Identity qualified
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import Data.Void (Void)
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import Data.Void (Void)
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import Objects.Expression
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import Text.Megaparsec as MP
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import Text.Megaparsec as MP
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import Text.Megaparsec.Char as C
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import Text.Megaparsec.Char as C
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import Text.Megaparsec.Char.Lexer as L
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import Text.Megaparsec.Char.Lexer as L
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import Types.Expr
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type Parser = Parsec Void String
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type Parser = Parsec Void String
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]
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]
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]
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]
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binaryOp :: String -> (a -> a -> a) -> Operator (ParsecT Void String Data.Functor.Identity.Identity) a
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binaryOp name f = InfixL (f <$ symbolParser name)
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binaryOp name f = InfixL (f <$ symbolParser name)
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expr :: Parser Expr
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expr :: Parser Expr
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module Types.Expr (Expr (..)) where
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data Expr
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= Lit Int
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| Add Expr Expr
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| Sub Expr Expr
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| Mul Expr Expr
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| Div Expr Expr
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deriving (Show)
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- megaparsec >= 9.0.1 && < 10
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- megaparsec >= 9.0.1 && < 10
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- parser-combinators
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- parser-combinators
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- text
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- text
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- llvm-hs >= 15 && < 16
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# - llvm-hs >= 15 && < 16
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- llvm-hs-pure >= 15 && < 16
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- llvm-hs-pure >= 15 && < 16
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# - llvm-hs-pretty >= 15 && < 16
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- llvm-hs-pretty >= 15 && < 16
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- bytestring
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- bytestring
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tested-with: GHC == 9.2.8
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tested-with: GHC == 9.2.8
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category: Compilers/Interpreters
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category: Compilers/Interpreters
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executable really-bad-compiler-in-haskell
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executable really-bad-compiler-in-haskell
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main-is: Main.hs
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main-is: Main.hs
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other-modules:
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other-modules:
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Eval.Expression
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Eval.Expr
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LLVMGen.Expression
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LLVMGen.Expr
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Objects.Expression
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Parser.Expr
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Parser.Expression
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Types.Expr
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Paths_really_bad_compiler_in_haskell
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Paths_really_bad_compiler_in_haskell
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hs-source-dirs:
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hs-source-dirs:
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main
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main
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build-depends:
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build-depends:
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base >=4.14.3 && <5
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base >=4.14.3 && <5
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, bytestring
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, bytestring
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, llvm-hs ==15.*
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, llvm-hs-pretty ==15.*
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, llvm-hs-pure ==15.*
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, llvm-hs-pure ==15.*
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, megaparsec >=9.0.1 && <10
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, megaparsec >=9.0.1 && <10
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, parser-combinators
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, parser-combinators
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packages:
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packages:
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- .
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- .
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extra-deps:
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extra-deps:
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# - github: hyunsooda/llvm-hs-pretty-15
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- github: hyunsooda/llvm-hs-pretty-15
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# commit: 79283942d1667168ecd65237667aff7fed730303
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commit: 79283942d1667168ecd65237667aff7fed730303
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- github: llvm-hs/llvm-hs
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- github: llvm-hs/llvm-hs
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commit: 5bca2c1a2a3aa98ecfb19181e7a5ebbf3e212b76
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commit: 5bca2c1a2a3aa98ecfb19181e7a5ebbf3e212b76
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subdirs:
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subdirs:
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- llvm-hs-pure
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- llvm-hs-pure
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- llvm-hs
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# - llvm-hs
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nix:
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nix:
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enable: true
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enable: true
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packages: [llvm_15, clang_15, libxml2]
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packages: [llvm_15, clang_15, libxml2]
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# https://docs.haskellstack.org/en/stable/lock_files
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# https://docs.haskellstack.org/en/stable/lock_files
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packages:
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packages:
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- completed:
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name: llvm-hs-pretty
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pantry-tree:
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sha256: 22ac4a47e1833dece52af7a6f8589958021d67292f6cc3de015ecb7c699db62d
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size: 5197
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sha256: 8348b72a61807414ad15e0b7e82a7753e4473701e7ab98520c2e9d9a51c5ed7f
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size: 43787
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url: https://github.com/hyunsooda/llvm-hs-pretty-15/archive/79283942d1667168ecd65237667aff7fed730303.tar.gz
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version: 15.0.0
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original:
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url: https://github.com/hyunsooda/llvm-hs-pretty-15/archive/79283942d1667168ecd65237667aff7fed730303.tar.gz
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- completed:
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- completed:
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name: llvm-hs-pure
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name: llvm-hs-pure
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pantry-tree:
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pantry-tree:
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original:
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original:
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subdir: llvm-hs-pure
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subdir: llvm-hs-pure
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url: https://github.com/llvm-hs/llvm-hs/archive/5bca2c1a2a3aa98ecfb19181e7a5ebbf3e212b76.tar.gz
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url: https://github.com/llvm-hs/llvm-hs/archive/5bca2c1a2a3aa98ecfb19181e7a5ebbf3e212b76.tar.gz
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- completed:
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name: llvm-hs
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pantry-tree:
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sha256: 21f74a6f51fae6c0a0fcf3e6620a59f341289ac743998b41ed3276fd1b7d8862
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size: 12716
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sha256: 526b67e2da9ce25b3856c221b6772e699a7593dbb5ba38e7ee2436349de70966
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size: 9802209
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subdir: llvm-hs
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url: https://github.com/llvm-hs/llvm-hs/archive/5bca2c1a2a3aa98ecfb19181e7a5ebbf3e212b76.tar.gz
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version: 15.0.0
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original:
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subdir: llvm-hs
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url: https://github.com/llvm-hs/llvm-hs/archive/5bca2c1a2a3aa98ecfb19181e7a5ebbf3e212b76.tar.gz
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snapshots:
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snapshots:
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- completed:
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- completed:
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sha256: 5a59b2a405b3aba3c00188453be172b85893cab8ebc352b1ef58b0eae5d248a2
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sha256: 5a59b2a405b3aba3c00188453be172b85893cab8ebc352b1ef58b0eae5d248a2
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Reference in New Issue